JP2006233949A - Power generation device using balance motion and buoyancy of liquid - Google Patents

Power generation device using balance motion and buoyancy of liquid Download PDF

Info

Publication number
JP2006233949A
JP2006233949A JP2005089758A JP2005089758A JP2006233949A JP 2006233949 A JP2006233949 A JP 2006233949A JP 2005089758 A JP2005089758 A JP 2005089758A JP 2005089758 A JP2005089758 A JP 2005089758A JP 2006233949 A JP2006233949 A JP 2006233949A
Authority
JP
Japan
Prior art keywords
rod
liquid
buoyancy
balance
rolling
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2005089758A
Other languages
Japanese (ja)
Inventor
Shigeki Sato
佐藤  茂樹
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP2005089758A priority Critical patent/JP2006233949A/en
Publication of JP2006233949A publication Critical patent/JP2006233949A/en
Pending legal-status Critical Current

Links

Images

Abstract

<P>PROBLEM TO BE SOLVED: To generate power by using gravity in atmosphere and buoyancy in liquid. <P>SOLUTION: An angled operation rod 1 having floats 5 not simultaneously enter into liquid 7 and a balance rod 2 for moving the operation rod under a condition where buoyancy does not act on the same are overlapped at one fixing axle 3 and are put under a balance condition. Then, the float 5 connecting to the operation rod 1 is raised a little bit higher than a horizontal line by buoyancy and the balance rod is inclined and a rolling ball 9 built in the balance rod 2 rolls to an opposite side. Consequently, a rolling rod 8 also rolls to a same direction and load transfer is done at one stroke. This device whole body repeats balance motion or seesaw motion to generate power. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、化石燃料を必要とせず、天秤運動と液体浮力よる動力発生装置に関するものである。  The present invention relates to a power generation device that uses a balance movement and liquid buoyancy without requiring fossil fuel.

従来の動力装置は、石炭、石油、ガス、原子力ウラン等と常に化石燃料が必要な内燃機関であり、大気汚染や地球温暖化、又、近年例をみない大量消費による化石燃料資源の枯渇も問題視されている。  Conventional power systems are internal combustion engines that always require fossil fuels such as coal, oil, gas, nuclear uranium, etc., and air pollution, global warming, and depletion of fossil fuel resources due to unprecedented mass consumption. It is regarded as a problem.

それゆえ、最近ではエコエネルギーと称して風力発電や太陽熱発電等の開発に余念が無いが、残念な事に天候気象に左右され、安定した動力が期待できない状態にある。  Therefore, recently there is no choice but to develop wind power generation and solar thermal power generation as eco-energy, but unfortunately it depends on weather and weather, and stable power cannot be expected.

化石燃料を使用せず、天候気象にも左右されない、安全且つ安定したエネルギー供給が成されていない点にある。  There is no safe and stable energy supply that does not use fossil fuels and is not affected by weather.

問題を解決しようとする課題Challenges to solve the problem

本発明は、安全、且つ安定したエネルギーを供給する為に、大気中に存する重力を利用した天秤運動、別名、シーソー運動と水中、及び液体中に存する浮力を組み合わせ、最大限に利用する事を最も主要な特徴とする。  In order to supply safe and stable energy, the present invention combines the balance movement using the gravity existing in the atmosphere, also known as the seesaw movement and the buoyancy existing in the water and the liquid, to maximize the use. The most important feature.

発明の効果The invention's effect

本発明の動力装置は、水、及び液体と大気中の重力さえあれば、所、場所を選ばず、水槽が無くても水溜りのある池や沼でも活用でき、海中でも設置できる。
当然、メンテナンスさえしっかりすれば各家庭にも戸別に設置でき、送電線、電柱等も不要となる。
The power device of the present invention can be used in a pond or swamp where there is no water tank and can be installed in the sea, without any tank, as long as it has water, liquid and gravity in the atmosphere.
Of course, if maintenance is done well, it can be installed in each household, and no transmission lines or poles are required.

発明を実施する為の最良の形態BEST MODE FOR CARRYING OUT THE INVENTION

化石燃料を使用せず、又、天候気象にも左右されずに安全安定供給できる動力エネルギーを発生させる目的を、自然停止する天秤運動、別名、シーソー運動を停止させないように、自然界に存在する水中、及び液体中に於ける浮力を供給し続ける事によって、天秤運動、又はシーソー運動を連続させる事で実現した。  The purpose of generating kinetic energy that can be safely and stably supplied without using fossil fuels and not affected by weather is to use a balance movement that stops naturally, also known as underwater that exists in nature so as not to stop the seesaw movement. , And by continuing to supply buoyancy in the liquid, the balance movement or seesaw movement was continued.

図1は、本発明装置、天秤運動の左側の浮き(5)が液体(7)の浮力により、最大限に浮き上がってきた状態の実施例断面図である。  FIG. 1 is a cross-sectional view of an embodiment of the device according to the present invention, in which the float (5) on the left side of the balance movement is lifted to the maximum by the buoyancy of the liquid (7).

図2、図3は弾み棒(2)の詳細断面図である。
弾み棒(2)はいわゆる天秤棒であり、ある程度の重量のある転がり球(9)を内臓する事によって、僅かな傾きによって転がり球(9)は傾き方向へと転がって行き、弾み棒(2)は、あっという間にその方向へと傾いてしまう。
2 and 3 are detailed cross-sectional views of the ball (2).
The ball (2) is a so-called balance bar. By incorporating a rolling ball (9) having a certain amount of weight, the ball (9) rolls in a tilting direction with a slight inclination, and the ball (2) Will quickly tilt in that direction.

図4、図5は作動棒(1)の詳細断面図である。
作動棒(1)も又、いわゆる天秤棒であり、連結棒(4)を通じて浮き(5)を左右それぞれ吊り下げる事となるが、左右の浮き(5)が液体(7)に同時に没しないように、作動棒(1)本体は図4のように適度に角度を付ける事とする。
これにより、液体(7)の浮力は左右の浮き(5)に対して片方ずつ。交互にしか働かなくなる。
4 and 5 are detailed sectional views of the operating rod (1).
The actuating rod (1) is also a so-called balance rod, and the float (5) is suspended from the left and right through the connecting rod (4), but the left and right floats (5) are not immersed in the liquid (7) at the same time. The operating rod (1) body is appropriately angled as shown in FIG.
Thereby, the buoyancy of the liquid (7) is one for each of the left and right floats (5). It only works alternately.

次に、浮き(5)が、片側半分の総荷重を負いながらも、最大限に浮上した時、図1のように弾み棒(2)の片側が水平ラインよりも少し角度が付いて上向くようにするには、浮き(5)の形状、容量、重り(11)の重量、連結棒(4)の長さ、液体(7)の液面高さである液体上端ライン(12)を調整する事で可能となる。
これは、空き瓶に重りのかわりに水をいれ、多少の空気層を残して蓋栓を閉め、それを川や海等の水中に投げ入れると、大気中水面に届くまでの落下荷重によりいったん水中へ深く沈み込むが、すぐに浮かび上がってきて波動が無い限りは浮かんだまま静止してしまう、あの自然現象を利用したものである。
Next, when the float (5) floats to the maximum while carrying the total load on one side half, as shown in Fig. 1, one side of the bounce bar (2) is slightly angled upward with respect to the horizontal line. In order to achieve this, the shape of the float (5), the capacity, the weight of the weight (11), the length of the connecting rod (4), and the liquid top line (12), which is the liquid level of the liquid (7), are adjusted. Things are possible.
This is because if you put water in an empty bottle instead of a weight, close the lid with a little air layer, and throw it into the water such as a river or the sea, the water drops once until it reaches the surface of the water in the atmosphere. It uses the natural phenomenon that sinks deeply into the water, but immediately emerges and remains stationary as long as there is no wave motion.

又、魚釣りの浮きも同じ現象がみられる。釣り糸についた浮きの下方には鉛の重り付いており、水中、又は海中へ投げ入れた時、浮きはいったん沈んで見えなくなるが、すぐに浮かんできて浮きの役目を果たしてくれる。
又、鉛の重りは浮きの下方に設ける事で浮きを垂直に立たせ、浮きを水面上に出す高さ調整の役目も負っている
本発明装置の重り(11)も同じ意味合いも持って設置している。
The same phenomenon is observed in fishing floats. There is a weight of lead under the float on the fishing line, and when thrown into the water or the sea, the float once sinks and disappears, but it floats immediately and plays the role of a float.
In addition, the lead weight is placed under the float so that the float stands vertically, and also has the role of height adjustment to bring the float above the water surface. The weight (11) of the device of the present invention is also installed with the same meaning. ing.

次に、図6〜図9は本発明装置の作動状況を図示しているので順を追って説明する事とする。
まず、図6は図1と同じで図1よりも簡素化されているだけである。この作動状況は、左側の浮き(5)が目一杯浮き上がった状況である。この時、浮き(5)と連結連動しているのは作動棒(1)であるが、転がり棒(8)が作動棒(1)と弾み棒(2)をカンヌキみたいに貫いて連動する仕組みになっており、浮き(5)が目一杯浮き上がった時に、弾み棒(2)が水平ラインより少し角度が付いて持ち上がるように設定されているので、当然、転がり球(9)は低いほうの右側へと転がり始め、弾み棒(2)全体の荷重は右側へと移行していく。
Next, FIGS. 6 to 9 illustrate the operating status of the device of the present invention, and will be described in order.
First, FIG. 6 is the same as FIG. 1 and is only simplified than FIG. This operating situation is a situation in which the left float (5) has been lifted to the full. At this time, it is the actuating rod (1) that is linked and interlocked with the float (5), but the rolling rod (8) is interlocked by penetrating the actuating rod (1) and the bounce rod (2) like a cannula. Since the ball (2) is set to lift at a slight angle from the horizontal line when the float (5) is fully lifted, naturally the rolling ball (9) is the lower one. It begins to roll to the right, and the entire load of the ball (2) shifts to the right.

その時、右側に荷重移動した弾み棒(2)は右側が下がり、左側が持ち上がる事となり、弾み棒(2)に設けてある作動棒受け(10)にて作動棒(1)を持ち上げていく事となる。すると、それまで浮力で持ち上げられてきた作動棒(1)と、転がり棒(8)を通じて持ち上がった弾み棒(2)とに挟まれて、転がり棒(8)は首を挟まれた状態にあり、固定された状況にあった。それが今度は逆に作動棒(1)が持ち上げられ、転がり棒(8)の首を絞めていたタガが緩む事となり転がり棒(8)もようやく右側へと転がり始める事となる。  At that time, the right-handed movement rod (2) is lowered on the right side and lifted on the left side, and the operation rod (1) is lifted by the operation rod receiver (10) provided on the movement rod (2). It becomes. Then, the rolling rod (8) is sandwiched between the actuating rod (1) that has been lifted by buoyancy and the ball (2) lifted through the rolling rod (8), and the neck is pinched. Was in a fixed situation. On the contrary, the actuating rod (1) is lifted, and the tag that has narrowed the neck of the rolling rod (8) is loosened, and the rolling rod (8) finally begins to roll to the right.

適度な重量のある転がり球(9)が右側へ転がり出すと、これ、又適度な重量のある転がり棒(8)もすぐに追随して転がり始め、荷重が一気に右側に集中して図7のように一気に傾いてしまう。  When the rolling ball (9) having an appropriate weight starts to roll to the right side, the rolling rod (8) having an appropriate weight immediately follows and starts rolling, and the load is concentrated to the right side as shown in FIG. Will tilt at once.

上記の空き瓶や魚釣りの浮きにて説明したように、一瞬の荷重により沈んでも浮き(5)の浮力にて図8のように右側は水平ラインより少し持ち上がってくる。そして、又、図6と同じ状況で、転がり球(9)と転がり棒(8)が今度は左側へと転がり落ちて来て図9のように大きく傾く事となる。  As explained in the above-mentioned empty bottles and fishing floats, the right side is slightly lifted from the horizontal line as shown in FIG. Then, in the same situation as in FIG. 6, the rolling ball (9) and the rolling bar (8) are now rolled down to the left and tilted greatly as shown in FIG.

以上のように、図6〜図9までの工程を繰り返す事となり、本発明装置は化石燃料を必要とせず、天候気象にも左右されず、大気中の重力と液体中の浮力のみを必要とする動力発生装置である。  As described above, the steps from FIG. 6 to FIG. 9 are repeated, and the device of the present invention does not require fossil fuel, is not affected by weather, and only requires gravity in the atmosphere and buoyancy in the liquid. It is the motive power generator which performs.

図示していないが、本発明装置の規模によっては、重り(11)だけでは浮き(5)が液体(7)中にて横振れする事がある。その時は、水槽の形を変えて、浮き(5)の上下する範囲だけを壁面にて囲ってやれば良い。つまり、そこだけを浮き(5)の形状に合わせて円筒、又は、角筒形にし、水槽全体の形を凹の形にすれば良く、これにより液体量を大幅削減できるし、本発明装置全体の重量も削減できる。  Although not shown, depending on the scale of the device of the present invention, the float (5) may sway in the liquid (7) only with the weight (11). At that time, it is only necessary to change the shape of the water tank so that only the range in which the float (5) moves up and down is surrounded by the wall surface. In other words, it is only necessary to form a cylinder or a square tube in conformity with the shape of the floating (5), and to make the entire water tank into a concave shape. The weight of can also be reduced.

動く様子に飽きが来ず、部品に彩色を施す事での観賞用パーツとしても使えるし、子供向けの玩具としても利用できる。  It can be used as an ornamental part by coloring parts, and it can also be used as a toy for children.

本発明装置の実施方法を示した断面図である。  It is sectional drawing which showed the implementation method of this invention apparatus. 本発明装置、弾み棒(2)の正面断面図である。  It is front sectional drawing of this invention apparatus and a ball (2). 本発明装置、弾み棒(2)のA〜A’断面図である。  It is AA 'cross section figure of this invention apparatus and a ball (2). 本発明装置、作動棒(1)の正面断面図である。  It is front sectional drawing of this invention apparatus and an operating rod (1). 本発明装置、作動棒(1)のB〜B’断面図である。  It is B-B 'sectional drawing of this invention apparatus and an operating rod (1). 本発明装置、作動状況断面図である。  It is sectional drawing of this invention apparatus and an operation condition. 本発明装置、作動状況断面図である。  It is sectional drawing of this invention apparatus and an operation condition. 本発明装置、作動状況断面図である。  It is sectional drawing of this invention apparatus and an operation condition. 本発明装置、作動状況断面図である。  It is sectional drawing of this invention apparatus and an operation condition.

符号の説明Explanation of symbols

(1) 作動棒
(2) 弾み棒
(3) 固定軸
(4) 連結棒
(5) 浮き
(6) 水槽
(7) 液体
(8) 転がり棒
(9) 転がり球
(10) 作動棒受け
(11) 重り
(12) 液体上端ライン
(1) Actuating rod (2) Bounce rod (3) Fixed shaft (4) Connecting rod (5) Floating (6) Water tank (7) Liquid (8) Rolling rod (9) Rolling ball (10) Actuating rod receiver (11 ) Weight (12) Liquid top line

Claims (5)

作動棒(1)に、角度を付ける。  Angle the actuating rod (1). 弾み棒(2)に転がり球(9)を内臓する。  A rolling ball (9) is built in the ball (2). 作動棒(1)と、弾み棒(2)とを固定軸(3)1ヶ所にて組み合わせて天秤状態にし、連動作用するように転がり棒(8)と作動棒受け(10)を設ける。  The actuating rod (1) and the bounce rod (2) are combined at one position of the fixed shaft (3) to be in a balance state, and the rolling rod (8) and the actuating rod receiver (10) are provided so as to work together. 作動棒(1)の両端に設けた浮き(5)は、作動棒(1)に角度が付いている為、片方ずつしか液体中に没しないがその浮力が最大限に押し上げられた状態、当然、作動棒(1)、弾み棒(2)、転がり棒(8)、転がり球(9)、重り(11)、連結棒(4)、及び、その他すべての荷重が浮き(5)に荷重された状態にてである。
その状態にて、浮き(5)の浮力が最大限に押し上げられた時、弾み棒(2)が水平レベルより少し角度が上に上がり、内臓された転がり球(9)が反対側へと転がり始めるように、浮き(5)の形状、及び容量、重り(11)の重量、連結棒(4)の長さ、そして、液体(7)の量、及び液体上端ライン(12)の高さを調整し、設定設置する。
The floats (5) provided at both ends of the actuating rod (1) have an angle on the actuating rod (1), so that only one of them is immersed in the liquid, but the buoyancy is pushed up to the maximum. , Actuating rod (1), bounce rod (2), rolling rod (8), rolling ball (9), weight (11), connecting rod (4), and all other loads are loaded on the float (5) It is in the state.
In that state, when the buoyancy of the float (5) is pushed up to the maximum, the ball (2) rises slightly above the horizontal level and the built-in rolling ball (9) rolls to the opposite side. To begin, the shape and volume of the float (5), the weight of the weight (11), the length of the connecting rod (4), the amount of liquid (7), and the height of the liquid top line (12) Adjust and set up.
上記、請求項1〜4の内容を組み合わせて作動する動力発生装置。  The power generator which operates combining the content of the said Claims 1-4.
JP2005089758A 2005-02-25 2005-02-25 Power generation device using balance motion and buoyancy of liquid Pending JP2006233949A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2005089758A JP2006233949A (en) 2005-02-25 2005-02-25 Power generation device using balance motion and buoyancy of liquid

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2005089758A JP2006233949A (en) 2005-02-25 2005-02-25 Power generation device using balance motion and buoyancy of liquid

Publications (1)

Publication Number Publication Date
JP2006233949A true JP2006233949A (en) 2006-09-07

Family

ID=37041874

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2005089758A Pending JP2006233949A (en) 2005-02-25 2005-02-25 Power generation device using balance motion and buoyancy of liquid

Country Status (1)

Country Link
JP (1) JP2006233949A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200446404Y1 (en) 2007-08-10 2009-10-27 김권우 Buoyancy measure device
WO2018008858A1 (en) * 2016-07-06 2018-01-11 전정호 Rotating apparatus

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200446404Y1 (en) 2007-08-10 2009-10-27 김권우 Buoyancy measure device
WO2018008858A1 (en) * 2016-07-06 2018-01-11 전정호 Rotating apparatus

Similar Documents

Publication Publication Date Title
US8701403B2 (en) System for producing energy through the action of waves
WO2018095304A1 (en) Movable ballast leveling control device for use in floating wind turbine
US8915078B2 (en) System for producing energy through the action of waves
JP5541465B2 (en) Wave energy conversion equipment
US7969033B2 (en) Buoyancy energy cell
US9181922B2 (en) Marine energy capture system
US20110187101A1 (en) System for Producing Energy Through the Action of Waves
CN202152102U (en) Floating type wind power generation platform
JP2010521613A (en) Wave power plant
CN202756167U (en) Floating platform wave energy storage system and wave energy power generation system
US9976535B2 (en) System for producing energy through the action of waves
CN105189874B (en) Hybrid energy equipment
JP2006233949A (en) Power generation device using balance motion and buoyancy of liquid
US11067062B2 (en) Apparatus and method for generating electricity
CN102454533A (en) Device for generating power by using water surface surging
WO2015083154A2 (en) Desalination plant
KR101774442B1 (en) Ship with Electric Power Generation Device using Wave Force
TWM376642U (en) Floating carrier structure and power generation device with the same
TWM621832U (en) Ocean wave power generation device
CN207195084U (en) A kind of new and effective float and stay-supported TRT
WO2011120532A1 (en) New unlimited/clean source of energy invention
TWI764819B (en) Wave power generation device
TWM559936U (en) Power generation system utilizing wave buoyancy and gravity
TWI692580B (en) Ocean wave buoyancy and gravity generation system
JPH08240174A (en) Water surface wave energy converting device